[1]HEYES P J, FERMER M,林晓斌. 工程预测焊点疲劳寿命[J]. 中国机械工程, 1998, 9(11): 35-38.
HEYES P J, FERMER M, LIN Xiaobin. The Engineering Prediction of Spot-weld Fatigue Life[J]. China Mechanical Engineering, 1998, 9(11): 35-38.
[2]张义民. 汽车零部件可靠性设计[M]. 北京:北京理工大学出版社,2000:1-5.
ZHANG Yimin. Reliability Design of Auto Parts[M]. Beijing: Beijing Institute of Technology Press, 2000: 1-5.
[3]SHI Yandong, GUO Haiding. Stress Intensity Factor Based Spot Welds Fatigue Life Prediction Model[R]. SAE Paper, 2013-01-0389.
[4]NEWMAN J A, DOWLING N E. Crack Growth Approach to Life Prediction of Spot-welded Lap Joints[J]. Fatigue & Fracture of Engineering Materials & Structures, 2002, 21(9): 1123-1132.
[5]LIN S H, PAN J. Fatigue Life Prediction for Spot Welds in Coach-peel and Lap-shear Specimens with Consideration of Kinked Crack Behaviour[J]. International Journal of Materials & Product Technology, 2004, 20(1/3): 31-50.
[6]LIN P C, WANG D, PAN J, et al. Mode Ⅰ Stress Intensity Factor Solutions for Spot Welds in Lap-shear Specimens[J]. International Journal of Solids and Structures, 2007, 44(3): 1013-1037.
[7]ZHANG S. Stress Intensity Factors for Spot Welds Joining Sheets of Unequal Thickness[J]. International Journal of Fracture, 2003, 122(1/2):L119-L124.
[8]RADAJ D, ZHANG S. Stress Intensity Factors for Spot Welds between Plates of Unequal Thickness[J]. Engineering Fracture Mechanics, 1991, 39(2):391-413.
[9]LAZZARIN P, TOVO R. A Notch Intensity Factor Approach to the Stress Analysis of Welds[J]. Fatigue & Fracture of Engineering Materials & Structures, 1998, 21(9):1089-1103.
[10]LEE H, KIM N. Fatigue Life Prediction of Multi-spot-welded Panel Structures Using an Equivalent Stress Intensity Factor[J]. International Journal of Fatigue, 2004, 26(4): 403-412.
[11]PEI X, ZHANG L, REN Z. Assessment of Stress Intensity Factor of Spot Welding Joints Using Enriched EFGM[J]. Journal of Mechanical Strength, 2006(5): 742-746.
[12]钱涛. 基于平均应力因子的高强钢焊点疲劳寿命仿真预测方法研究[D]. 长沙:湖南大学,2015.
QIAN Tao. Study on the Prediction Method of Fatigue Life of High-strength Steel Solder Joints Based on Average Stress Factor[D]. Changsha: Hunan University, 2015.
[13]宋凯,钱涛,陈涛,等. 一种基于平均应力强度因子的焊点疲劳寿命预测方法[J]. 机械工程学报,2015, 51(16): 113-119.
SONG Kai, QIAN Tao, CHEN Tao, et al. A Method for Predicting Fatigue Life of Solder Joints Based on Average Stress Intensity Factor[J]. Journal of Mechanical Engineering, 2015, 51(16): 113-119.
[14]KOUSHI K, SEIJI H, TAKAHIRO O.Rupture Modeling of Spot Welds under Dynamic Loading for Car Crash FE Analysis[C]//6th European LS-DYNA Users Conference. Frankenthal, 2007:17-24.
[15]TADA H, PARIS P, IRWIN G. The Stress Analysis of Cracks Handbook[M]. New York: ASME, 2000.
[16]DONG P. A Structural Stress Definition and Numerical Implementation for Fatigue Analysis of Spot Welded Automotive Structures[J]. International Journal of Fatigue, 2001, 23: 865-876.
[17]TRAN V X, PAN J. Analytical Stress Intensity Factor Solutions for Resistance and Friction Stir Spot Welds in Lap-shear Specimens of Different Materials and Thicknesses[J]. Engineering Fracture Mechanics, 2010, 77(14): 2611-2639. |